首页> 美国卫生研究院文献>Molecules >Structure Related Inhibition of Enzyme Systems in Cholinesterases and BACE1 In Vitro by Naturally Occurring Naphthopyrone and Its Glycosides Isolated from Cassia obtusifolia
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Structure Related Inhibition of Enzyme Systems in Cholinesterases and BACE1 In Vitro by Naturally Occurring Naphthopyrone and Its Glycosides Isolated from Cassia obtusifolia

机译:自然存在的萘并吡喃酮及其糖苷从决明子中的分离对体外胆碱酯酶和BACE1酶系统的结构相关抑制

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摘要

Cassia obtusifolia Linn. have been used to improve vision, inflammatory diseases, and as hepatoprotective agents and to promote urination from ancient times. In the present study, we investigated the influence of glycosylation of components of C. obtusifolia and structure-activity relationships (SARs) with respect to the inhibition of acetylcholinesterase (AChE), butyrylcholinesterase (BChE), and β-site amyloid precursor protein (APP)-cleaving enzyme 1 (BACE1), which are related to Alzheimer’s disease (AD). All six C. obtusifolia-derived compounds, rubrofusarin (>1), rubrofusarin 6-O-β-d-glucopyranoside (>2), rubrofusarin 6-O-β-d-gentiobioside (>3), nor-rubrofusarin 6-O-β-d-glucoside (>4), isorubrofusarin 10-O-β-d-gentiobioside (>5), and rubrofusarin 6-O-β-d-triglucoside (>6) showed promising inhibitory activity against AChE/BACE1. Compounds >3 and >4 showed most significant inhibition against AChE and BACE1, respectively. The SARs results emphasized the importance of gentiobiosyl moiety in the rubrofusarin for AChE inhibition, whereas the presence of hydroxyl group at C-8 and the glucosyl moiety at the C-6 position in the nor-rubrofusarin appeared to largely determine BACE1 inhibition. Kinetics and docking studies showed the lowest binding energy and highest affinity for mixed-type inhibitors, >3 and >4. Hydrophobic bonds interactions and the number of hydrogen bonds determined the strength of the protein-inhibitor interaction. These results suggest that C. obtusifolia and its constituents have therapeutic potential, and that the SARs of its active components are further explored with a view towards developing a treatment for AD.
机译:决明子(Cassia obtusifolia Linn)。已被用于改善视力,炎性疾病,并作为肝保护剂并促进远古时期的排尿。在本研究中,我们调查了ob虫的成分的糖基化和构效关系(SAR)对抑制乙酰胆碱酯酶(AChE),丁酰胆碱酯酶(BChE)和β位淀粉样蛋白前体蛋白(APP)的影响)裂解酶1(BACE1),与阿尔茨海默氏病(AD)有关。所有六个源自钝角梭菌的化合物,茜草红素(> 1 ),茜草红素6-O-β-d-吡喃葡萄糖苷(> 2 ),茜草红素6-O-β-d -龙胆苷(> 3 ),去氟铁氰菊酯6-O-β-d-葡萄糖苷(> 4 ),异氟铁氰菊酯10-O-β-d-龙胆苷(> 5 )和茜草素6-O-β-d-三葡萄糖苷(> 6 )显示出对AChE / BACE1的抑制作用。化合物> 3 和> 4 分别显示出对AChE和BACE1的最显着抑制作用。 SAR结果强调了风红素类素中龙胆二糖基部分对AChE抑制的重要性,而去甲紫红花色苷中C-8处羟基和C-6位置的葡糖基部分的存在似乎在很大程度上决定了BACE1抑制作用。动力学和对接研究表明,混合型抑制剂> 3 和> 4 的结合能最低,亲和力最高。疏水键相互作用和氢键的数量决定了蛋白质-抑制剂相互作用的强度。这些结果表明,钝角隐孢子虫及其成分具有治疗潜力,并且进一步探索其活性成分的SAR,以期开发用于AD的治疗方法。

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